Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft Soil

The stress−strain behavior of nano magnesia-cement-reinforced seashore soft soil (Nmcs) under different circumstances exhibits various characteristics, e.g., strain-hardening behavior, falling behavior, S-type falling behavior, and strong softening behavior. This study therefore proposes a...

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Main Authors: Wei Wang, Yong Fu, Chen Zhang, Na Li, Aizhao Zhou
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Mathematics
Subjects:
Online Access:https://www.mdpi.com/2227-7390/8/3/456
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spelling doaj-571cef67a463441a972ec624ce7536402020-11-25T01:28:23ZengMDPI AGMathematics2227-73902020-03-018345610.3390/math8030456math8030456Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft SoilWei Wang0Yong Fu1Chen Zhang2Na Li3Aizhao Zhou4School of Civil Engineering, Shaoxing University, Shaoxing, Zhejiang 312000, ChinaDepartment of Ocean Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaSchool of Civil Engineering, Shaoxing University, Shaoxing, Zhejiang 312000, ChinaSchool of Civil Engineering, Shaoxing University, Shaoxing, Zhejiang 312000, ChinaDepartment of Civil and Architecture Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, Jiangsu, ChinaThe stress−strain behavior of nano magnesia-cement-reinforced seashore soft soil (Nmcs) under different circumstances exhibits various characteristics, e.g., strain-hardening behavior, falling behavior, S-type falling behavior, and strong softening behavior. This study therefore proposes a REP (reinforced exponential and power function)-based mathematical model to simulate the various stress−strain behaviors of Nmcs under varying conditions. Firstly, the mathematical characteristics of different constitutive behaviors of Nmcs are explicitly discussed. Secondly, the conventional mathematical models and their applicability for modeling stress−strain behavior of cemented soil are examined. Based on the mathematical characteristics of different stress−strain curves and the features of different conventional models, a simple mathematical REP model for simulating the hardening behavior, modified falling behavior and strong softening behavior is proposed. Moreover, a CEL (coupled exponential and linear) model improved from the REP model is also put forth for simulating the S-type stress−strain behavior of Nmcs. Comparisons between conventional models and the proposed REP-based models are made which verify the feasibility of the proposed models. The proposed REP-based models may facilitate researchers in the assessment and estimation of stress−strain constitutive behaviors of Nmcs subjected to different scenarios.https://www.mdpi.com/2227-7390/8/3/456seashore soft soilcementsulfuric acid erosionstress–strain behaviormathematical model
collection DOAJ
language English
format Article
sources DOAJ
author Wei Wang
Yong Fu
Chen Zhang
Na Li
Aizhao Zhou
spellingShingle Wei Wang
Yong Fu
Chen Zhang
Na Li
Aizhao Zhou
Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft Soil
Mathematics
seashore soft soil
cement
sulfuric acid erosion
stress–strain behavior
mathematical model
author_facet Wei Wang
Yong Fu
Chen Zhang
Na Li
Aizhao Zhou
author_sort Wei Wang
title Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft Soil
title_short Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft Soil
title_full Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft Soil
title_fullStr Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft Soil
title_full_unstemmed Mathematical Models for Stress–Strain Behavior of Nano Magnesia-Cement-Reinforced Seashore Soft Soil
title_sort mathematical models for stress–strain behavior of nano magnesia-cement-reinforced seashore soft soil
publisher MDPI AG
series Mathematics
issn 2227-7390
publishDate 2020-03-01
description The stress−strain behavior of nano magnesia-cement-reinforced seashore soft soil (Nmcs) under different circumstances exhibits various characteristics, e.g., strain-hardening behavior, falling behavior, S-type falling behavior, and strong softening behavior. This study therefore proposes a REP (reinforced exponential and power function)-based mathematical model to simulate the various stress−strain behaviors of Nmcs under varying conditions. Firstly, the mathematical characteristics of different constitutive behaviors of Nmcs are explicitly discussed. Secondly, the conventional mathematical models and their applicability for modeling stress−strain behavior of cemented soil are examined. Based on the mathematical characteristics of different stress−strain curves and the features of different conventional models, a simple mathematical REP model for simulating the hardening behavior, modified falling behavior and strong softening behavior is proposed. Moreover, a CEL (coupled exponential and linear) model improved from the REP model is also put forth for simulating the S-type stress−strain behavior of Nmcs. Comparisons between conventional models and the proposed REP-based models are made which verify the feasibility of the proposed models. The proposed REP-based models may facilitate researchers in the assessment and estimation of stress−strain constitutive behaviors of Nmcs subjected to different scenarios.
topic seashore soft soil
cement
sulfuric acid erosion
stress–strain behavior
mathematical model
url https://www.mdpi.com/2227-7390/8/3/456
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